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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of alumina content on microstructures, mechanical, wear and machining behavior of Cu-10Zn nanocomposite prepared by mechanical alloying and hot-pressing
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Effect of alumina content on microstructures, mechanical, wear and machining behavior of Cu-10Zn nanocomposite prepared by mechanical alloying and hot-pressing

机译:氧化铝含量对机械合金化和热压制备Cu-10Zn纳米复合材料的微结构,机械,磨损和加工行为的影响

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摘要

In the present research work, novel (Cu-10Zn)(100-x) -x wt.% Al2O3 (x = 0, 3, 6, 9 & 12) nanocomposites were manufactured by mechanical alloying process followed by vacuum hot-pressing technique. The mechanical properties (sinterability, hardness and compressive strength), wear behavior (coefficient of friction, wear rate and worn surface morphology) and machining behavior (surface roughness and chip thickness) were explained and investigated elaborately. The same compositions of (Cu-10Zn)(100-x) -x wt.% Al2O3 microcomposites (coarse crystalline matrix alloy reinforced with alumina) were also fabricated and compared with nanocomposites. It was observed that uniform distribution and embedding of nano-alumina in the nanocrystallite (nano-grain) matrix in nanocomposites were achieved which exhibited excellent performances. The (Cu-10Zn)(88)-12 wt% Al2O3 bulk nanocomposite produced highest compressive strength which was around 9.4 times higher than the same amount of reinforcement of microcomposites. Further, nanocomposites showed lower value of coefficient of friction and surface roughness which means a considerable wear resistance and good surface finish was obtained in nanocomposites. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本研究工作中,通过机械合金化工艺制造了新的(Cu-10Zn)(100-x)-Xwt.%Al 2 O 3(X = 0,3,6,9和12)纳米复合材料,然后是真空热压技术制造。解释和研究精心解释机械性能(摩擦性,硬度和抗压强度),磨损行为(摩擦系数,磨损率和磨损表面形态)和加工行为(表面粗糙度和芯片厚度)。还制造了相同的(Cu-10Zn)(100-x)-X-x Wt。的组合物(Cu-10Zn)(100-x)-X-x wt.%Al 2 O 3微孔复合材料(粗晶体基质合金加强氧化铝),并与纳米复合材料进行比较。观察到纳米复合材料中纳米晶体(纳米粒子)基质中的纳米氧化铝均匀分布和嵌入纳米 - 氧化铝中的均匀分布和嵌入纳米复合材料中的纳米氧化物基质,其表现出优异的性能。 (Cu-10Zn)(88)-12wt%Al 2 O 3块状纳米复合材料产生的最高抗压强度,其比相同的微孔复合材料的增强量高约9.4倍。此外,纳米复合材料显示出较低的摩擦系数和表面粗糙度,这意味着在纳米复合材料中获得相当大的耐磨性和良好的表面光洁度。 (c)2017年Elsevier B.V.保留所有权利。

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